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arXiv · hep-ph/0209282

Modular Invariance, Soft Breaking, $μ$ and $\tanβ$ in Superstring Models

Abstract

We go beyond parameterizations of soft terms in superstring models and investigate the dynamical assumptions that lead to the relative strength of the dilaton {\it vs} the moduli contributions in the soft breaking. Specifically, we discuss in some simple heterotic orbifold models sufficient conditions to achieve dilaton dominance. Assuming self-dual points to be minima we find multiple solutions to the trilinear and bilinear soft parameters $A_0$ and $B_0$. We discuss the constraints on $μ$ and $\tanβ$ in superstring models in the context of radiative breaking of the electroweak symmetry. We show that string models prefer a small to a moderate value of $\tanβ$, {\it i.e}. $\tanβ\leq 10$, and a value much larger than this requires a high degree of fine tuning. Further, we show that for large $\tanβ$ the radiative electroweak symmetry breaking constraint leads to a value $α_{string}=g_{string}^2/4π$ which is typically an order of magnitude smaller than implied by the LEP data and the heterotic superstring relation $g_{string}=k_ig_i$, where $g_i$ is the gauge coupling constant for the gauge group $G_i$ and $k_i$ is the corresponding Kac-Moody level in the class of models considered. This situation can be overcome by another fine tuned cancellation between the dilaton and the moduli contributions in the soft parameters.

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BibTeXRIS

Pran Nath, Tomasz R. Taylor. 2002-10-08. Modular Invariance, Soft Breaking, $μ$ and $\tanβ$ in Superstring Models. https://doi.org/10.1016/s0370-2693(02)02816-2

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